AMD A6-7050B AMD A6-7050B
Apple A12 Bionic Apple A12 Bionic
VS

Comparision AMD A6-7050B vs Apple A12 Bionic

AMD A6-7050B

AMD A6-7050B

Rating: 0 points
Apple A12 Bionic

WINNER
Apple A12 Bionic

Rating: 56 points
Grade
AMD A6-7050B
Apple A12 Bionic
Interfaces and communications
0
4
Memory specification
2
3
Performance
1
7

Top specs and features

Memory frequency

AMD A6-7050B: 1600 MHz Apple A12 Bionic: 2133 MHz

Technological process

AMD A6-7050B: 28 nm Apple A12 Bionic: 7 nm

GPU base clock

AMD A6-7050B: 490 MHz Apple A12 Bionic: MHz

Number of threads

AMD A6-7050B: 2 Apple A12 Bionic:

Turbo GPU clock speed

AMD A6-7050B: 530 MHz Apple A12 Bionic: MHz

Description

AMD A6-7050B - 2 - core processor, clocked at 2200 GHz. Apple A12 Bionic is equipped with 6 cores clocked at 2490 MHz. The maximum frequency of the first processor is 3 GHz. The second is capable of overclocking to 2.49 GHz.

AMD A6-7050B consumes 17 Watt and Apple A12 Bionic 6 Watt.

As for the graphics core. AMD A6-7050B is equipped with There is no data. The second uses Apple A12 Bionic GPU. The first operates at a frequency of 490 MHz. Apple A12 Bionic operates at There is no data MHz.

Regarding processor memory. AMD A6-7050B may support DDR3. The maximum memory capacity is There is no data GB. And its throughput is There is no data GB/s. Apple A12 Bionic works with DDR4. The maximum amount of memory can be 12. At the same time, the throughput reaches 34 GB/s

Let's move on to performance testing in benchmarks. In the AnTuTu benchmark, AMD A6-7050B scored There is no data points out of 988414 possible points. In the GeekBench 5 (Multi-Core) benchmark, it scored There is no data points out of a possible 16511 points. Apple A12 Bionic in Antutu received 517671 points. And GeekBench 5 (Multi-Core) scored 2996 points .

Results.

Why Apple A12 Bionic is better than AMD A6-7050B

  • Maximum processor frequency 3 GHz против 2.49 GHz, more on 20%

AMD A6-7050B vs Apple A12 Bionic: highlights

AMD A6-7050B
AMD A6-7050B
Apple A12 Bionic
Apple A12 Bionic
Interfaces and communications
VC-1
A video compression standard that provides a high compression ratio and supports various resolutions and bit rates.
Available
There is no data
AVC
Available
There is no data
JPEG
Supports an image compression format that is widely used for photographs and graphics.
Available
There is no data
ECC
Error correction technology that helps detect and correct memory errors resulting from random interference or malfunctions.
Not available
There is no data
FMA version
Refers to an instruction that performs a multiplication and addition operation at the same time. This allows you to improve performance when performing computationally intensive operations, such as mathematical calculations, with a single instruction. Newer versions of FMA include additional features and optimizations to improve performance and computational accuracy. Show more
4
max 4
Average: 3.8
max 4
Average: 3.8
AVX
A set of instructions that extends the capabilities of the processor to perform parallel computations on vector data.
Available
There is no data
SSE version
Refers to a set of instructions that are used to perform parallel operations on data in processors. SSE improves the processing performance of multimedia tasks such as images, audio, and video. Newer versions of SSE include additional instructions and features to improve performance. Show more
2
max 4.1
Average: 2.7
max 4.1
Average: 2.7
Hardware virtualization
Available
There is no data
socket
FM2+
There is no data
Intel® AES-NI Commands
AES is needed to speed up encryption and decryption.
Available
Available
Memory specification
Memory frequency
RAM may be faster to increase system performance.
1600 MHz
max 7500
Average: 1701 MHz
2133 MHz
max 7500
Average: 1701 MHz
Max. number of memory channels
The more their number, the higher the data transfer rate from memory to processor
2
max 8
Average: 2.1
max 8
Average: 2.1
RAM version (DDR)
Indicates the type and speed of RAM used to temporarily store data and perform tasks on the device. Newer versions of DDR, such as DDR4 or DDR5, provide faster data transfer rates and better overall system performance. Show more
3
max 5
Average: 3.5
4
max 5
Average: 3.5
Performance
Number of Cores
The more cores, the more parallel tasks can be completed in a shorter time. This improves productivity and multitasking quickly, such as launching applications, performing calculations, and more. Show more
2
max 16
Average: 6.4
6
max 16
Average: 6.4
GPU shaders
Refers to the parts of the GPU that are responsible for processing graphics and effects. The more shader units in the GPU, the higher the performance and graphics capabilities. Show more
192
max 1536
Average: 122.4
max 1536
Average: 122.4
CPU base frequency
The base frequency of a processor in mobile processors (SoCs) indicates its default operating frequency when the load on the processor does not require increased performance. The base frequency determines the base speed of the processor and affects the overall performance of the device. Show more
2200 MHz
max 3200
Average: 922.4 MHz
2490 MHz
max 3200
Average: 922.4 MHz
Hyper-threading
A technology that allows a single physical processor to execute multiple threads of tasks at the same time.
Not available
Not available
Max. GPU memory
More memory allows the GPU to process and store graphics data more efficiently, resulting in improved performance in games, 3D applications, and other graphics-intensive tasks. Show more
2 GB
max 8
Average: 4.1 GB
GB
max 8
Average: 4.1 GB
64-bit
The processor supports data and instruction processing with 64-bit width. This allows you to process more data and perform more complex calculations compared to 32-bit processors. Show more
Available
Available
Number of threads
The more threads, the higher the performance of the processor will be, and it will be able to perform several tasks at the same time.
2
max 24
Average: 5.7
max 24
Average: 5.7
Maximum processor frequency
When the processor's speed drops below its limit, it can jump to a higher clock speed to improve performance.
3 GHz
max 4.4
Average: 2.4 GHz
2.49 GHz
max 4.4
Average: 2.4 GHz
Multiplier Unlocked
Some processors have an unlocked multiplier, thanks to which they work faster and improve the quality in games and other applications.
Not available
Not available
L3 cache size
A large amount of L3 memory accelerates results in the CPU and system performance settings
1 MB
max 30
Average: 4.9 MB
MB
max 30
Average: 4.9 MB
FLOPS
The measurement of processing power of a processor is called FLOPS.
211 TFLOPS
max 2272
Average: 262.9 TFLOPS
535 TFLOPS
max 2272
Average: 262.9 TFLOPS

FAQ

How many points does AMD A6-7050B and Apple A12 Bionic score in benchmarks?

In the Antutu benchmark, AMD A6-7050B scored There is no data points. Apple A12 Bionic scored 517671 points.

How many cores does the processor have?

AMD A6-7050B has 2 cores. Apple A12 Bionic has 6 cores.

Does the processor support NAVIC?

AMD A6-7050B There is no data.

How many transistors are there in processors?

AMD A6-7050B has There is no data million transistors. Apple A12 Bionic has 6900 million transistors.

What GPU is installed on AMD A6-7050B and Apple A12 Bionic?

AMD A6-7050B uses There is no data. Processor Apple A12 Bionic has graphics core Apple A12 Bionic GPU installed.

How fast are the processors?

AMD A6-7050B is clocked at 2200 MHz. Apple A12 Bionic operates at 2490 MHz.

What kind of RAM is supported?

AMD A6-7050B supports DDR3. Apple A12 Bionic supports DDR4.

What is the maximum frequency of processors?

AMD A6-7050B has a maximum frequency of 3 Hz. The maximum frequency for Apple A12 Bionic reaches 2.49 GHz.

How much energy do they consume?

The power consumption of AMD A6-7050B can be up to 17 Watts. Apple A12 Bionic has up to 17 Watts.